Sterilizable battery
Development program for separator and modified polyethylene separator material for silver-zinc battery, and program for development of sealed heat sterilizable batteries
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Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
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Development program for separator and modified polyethylene separator material for silver-zinc battery, and program for development of sealed heat sterilizable batteries
Dry tape battery concept - cathode and anode research, energy densities, tape cell preparation, and supporting research
Computer methods for collection, reduction, correlation, and analysis of spacecraft nickel-cadmium battery test data
Polymer separator materials for heat sterilizable battery
Multisweep cyclic voltammetry for electrochemical characterization of systems for secondary battery application
Sealed electric storage battery with gas manifold interconnecting each cell
Nonmagnetic hermetically sealed battery case made of epoxy resin and woven glass tape for use with electrochemical cells in spacecraft
Research summaries on systems analysis, guidance and control, environmental factors, engineering development, propulsion, space sciences, and telecommunications
Evaluation of various anode-electrolyte and cathode-electrolyte combinations for high energy density battery
Gamma radiation effects determined on silver and zinc battery electrodes and silver-cadmium cells
Filler and matrix composite materials for use in silver-zinc battery separators
Prismatic and bobbin electrochemical cells for low temperature battery
Identification and characterization of battery active compound structures formed on nickel oxide electrode during charging and discharging
The Space Programs Summary is a six-volume, bimonthly publication that documents the current project activities and supporting research and advanced development efforts conducted or managed by JPL for the NASA space exploration programs.
In examining the characteristic inaccuracies of a pre-programmed high-gain antenna pointing system, the effects of spacecraft attitude errors, as embodied in pitch, yaw and roll limit cycle activity, are of major concern. If the pointing accuracy requirements for a particular mission allow the use of a single degree of freedom pointing system, it is doubtful whether a method of correcting antenna position for spacecraft attitude errors would be worthwhile. This is because the pointing error due to fitting a plane curve to a three-dimensional trajectory would probably be at least as large as the additional pointing errors due to attitude drift within the deadbands. Further, trying to correct pointing for pitch, yaw, and roll drifts by adjusting a single hinge angle is relatively ineffective.
The Advanced Liquid Propulsion Systems program is investigating selected problems generated by spacecraft operational requirements for propulsion systems capable of high inherent reliability, long-term storage in the space environment, multiple start in free fall (zero gravity), and engine throttling. The solutions proposed to satisfy these requirements are coordinated for practical application in a system.
Aqueous and nonqueous electrolytic actions, and energy density measurements for dry tape battery
Automatic device for recharging of nickel-cadmium battery